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通道的α亚基 C 末端的两个相邻磷酸化位点对上皮钠通道 (ENaC) 的活性有相反的影响。

Two adjacent phosphorylation sites in the C-terminus of the channel's α-subunit have opposing effects on epithelial sodium channel (ENaC) activity.

机构信息

Institut für Zelluläre und Molekulare Physiologie, Friedrich-Alexander-Universität Erlangen-Nürnberg, Waldstr, 6, 91054, Erlangen, Germany.

Medizinische Klinik 4 - Nephrologie und Hypertensiologie, Universitätsklinikum Erlangen, Ulmenweg 18, 91054, Erlangen, Germany.

出版信息

Pflugers Arch. 2022 Jul;474(7):681-697. doi: 10.1007/s00424-022-02693-9. Epub 2022 May 8.

Abstract

How phosphorylation of the epithelial sodium channel (ENaC) contributes to its regulation is incompletely understood. Previously, we demonstrated that in outside-out patches ENaC activation by serum- and glucocorticoid-inducible kinase isoform 1 (SGK1) was abolished by mutating a serine residue in a putative SGK1 consensus motif RXRXX(S/T) in the channel's α-subunit (S621 in rat). Interestingly, this serine residue is followed by a highly conserved proline residue rather than by a hydrophobic amino acid thought to be required for a functional SGK1 consensus motif according to in vitro data. This suggests that this serine residue is a potential phosphorylation site for the dual-specificity tyrosine phosphorylated and regulated kinase 2 (DYRK2), a prototypical proline-directed kinase. Its phosphorylation may prime a highly conserved preceding serine residue (S617 in rat) to be phosphorylated by glycogen synthase kinase 3 β (GSK3β). Therefore, we investigated the effect of DYRK2 on ENaC activity in outside-out patches of Xenopus laevis oocytes heterologously expressing rat ENaC. DYRK2 included in the pipette solution significantly increased ENaC activity. In contrast, GSK3β had an inhibitory effect. Replacing S621 in αENaC with alanine (S621A) abolished the effects of both kinases. A S617A mutation reduced the inhibitory effect of GKS3β but did not prevent ENaC activation by DYRK2. Our findings suggest that phosphorylation of S621 activates ENaC and primes S617 for subsequent phosphorylation by GSK3β resulting in channel inhibition. In proof-of-concept experiments, we demonstrated that DYRK2 can also stimulate ENaC currents in microdissected mouse distal nephron, whereas GSK3β inhibits the currents.

摘要

丝氨酸残基磷酸化对上皮钠通道(ENaC)调节作用的影响尚未完全阐明。此前,我们证明在质膜小泡中,通过突变通道α亚基中(大鼠中的 S621)一个假定的 SGK1 一致基序 RXRXX(S/T)中的丝氨酸残基,可使血清和糖皮质激素诱导激酶 1 型同工酶(SGK1)激活 ENaC 的作用丧失。有趣的是,此丝氨酸残基之后紧接着是一个高度保守的脯氨酸残基,而不是根据体外数据认为对功能性 SGK1 一致基序所必需的疏水性氨基酸。这表明此丝氨酸残基可能是双特异性酪氨酸磷酸化和调节激酶 2(DYRK2)的一个潜在磷酸化位点,DYRK2 是典型的脯氨酸导向激酶。其磷酸化可能使高度保守的前一个丝氨酸残基(大鼠中的 S617)被糖原合酶激酶 3β(GSK3β)磷酸化。因此,我们在异源表达大鼠 ENaC 的非洲爪蟾卵母细胞质膜小泡中研究了 DYRK2 对 ENaC 活性的影响。在 pipette 溶液中包含的 DYRK2 显著增加了 ENaC 活性。相比之下,GSK3β 具有抑制作用。将αENaC 中的 S621 突变为丙氨酸(S621A)可消除两种激酶的作用。S617A 突变减少了 GKS3β 的抑制作用,但不能阻止 DYRK2 激活 ENaC。我们的研究结果表明,S621 的磷酸化可激活 ENaC,并使 S617 为随后的 GSK3β 磷酸化做好准备,导致通道抑制。在概念验证实验中,我们证明 DYRK2 也可以刺激微切割的小鼠远曲小管中的 ENaC 电流,而 GSK3β 抑制电流。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eaf1/9192390/e3bda6561759/424_2022_2693_Fig1_HTML.jpg

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